EP0982001A1

Protocol driven image reconstruction, display, and processing in a multislice imaging system

Abstract

A scalable multislice system (10) configured to generate multiple streams of image data with different image quality characteristics prospectively and simultaneously is described. Such capability enables improving existing clinical diagnosis and also enables use of clinical application protocol driven method for image reconstruction and display as well as image analysis. More specifically, with the scalable multislice imaging system (10), multiple rows (>2) of x-ray scan data along the patient's long axis are simultaneously acquired. Multiple protocols (100) are "pre-built" based on specific applications to determine image slice thickness, image reconstruction filter, display method, e. g., field of view, filming requirement and image archiving requirement, prospectively. Multiple image sets with different slice thickness, different reconstruction methods, different display model - axial, 3D or reformat which are pre-determined by the protocol (100) used can then be displayed.

EP0982001A1, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 20 August 2019, 7.1 years ago.

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  5. Today

12 claims: 12 independent, 0 dependent

  1. 1
    A protocol (100) for defining operations performed by an imaging system (10), said protocol (100) comprising designations for at least one of slice thickness, image reconstruction filter, display method, filming requirement and image archiving requirement.
  2. 2
    A protocol (100) in accordance with Claim 1 wherein said protocol (100) designates at least one of CT neuro imaging, CT angiography, renal donor survey, pulmonary embolism, CT trauma imaging, whole body CT survey, and lung disease screening.
  3. 3
    A protocol (100) in accordance with Claim 1 wherein said protocol (100) designates CT angiography and comprises instructions for:acquiring a helical scan data set;preprocessing raw scan data;reconstructing sets of images, prospectively;and displaying images.
  4. 4
    A protocol (100) in accordance with Claim 1 wherein said protocol (100) designates a head trauma study and comprises instructions for:acquiring axial scan data sets;preprocessing raw scan data;reconstructing sets of cross-sectional images with different slice thickness for different portions of the head;and displaying the image sets simultaneously.
  5. 5
    A protocol (100) in accordance with Claim 1 wherein said protocol (100) designates an axial image display mode, weighting multiple ultra thin slice cross sectional images, and generating an image with a desired slice thickness.
  6. 6
    A protocol (100) in accordance with Claim 5 wherein said image is generated in accordance with:I(x,y) s = Σ W i ∗ I ( x,y ) i where I(x,y) s is the resulted image pixel values at location x and y, W i is the weighting factor determined by the final image slice thickness and sub-slice image thickness, and I(x,y) i is the pixel values at x and y for the sub-slice images.
  7. 7
    A multislice imaging system (10) programmed to execute a scan in accordance with a protocol (100), said protocol (100) comprising designations for at least one of slice thickness, image reconstruction filter, display method, filming requirement and image archiving requirement.
  8. 8
    A system (10) in accordance with Claim 7 wherein said protocol (100) designates at least one of CT neuro imaging, CT angiography, renal donor survey, pulmonary embolism, CT trauma imaging, whole body CT survey, and lung disease screening.
  9. 9
    A system (10) in accordance with Claim 7 wherein said protocol (100) designates CT angiography and comprises instructions for:acquiring a helical scan data set;preprocessing raw scan data;reconstructing sets of images, prospectively;and displaying images.
  10. 10
    A system (10) in accordance with Claim 7 wherein said protocol (100) designates a head trauma study and comprises instructions for:acquiring axial scan data sets;preprocessing raw scan data;reconstructing sets of cross-sectional images with different slice thickness for different portions of the head;and displaying the image sets simultaneously.
  11. 11
    A system (10) in accordance with Claim 7 wherein said protocol (100) designates an axial image display mode, weighting multiple ultra thin slice cross sectional images, and generating an image with a desired slice thickness.
  12. 12
    A system (10) in accordance with Claim 11 wherein said image is generated in accordance with:I ( x,y ) s = Σ W i ∗ I ( x,y ) i where I(x,y) s is the resulted image pixel values at location x and y, W i is the weighting factor determined by the final image slice thickness and sub-slice image thickness, and I(x,y) i is the pixel values at x and y for the sub-slice images.